> But the highly selective and racially segregated program will be replaced for incoming students. Wow, using a word such as segregation, which has connotations of 'by design' sure lays bare their hand. Just to be clear, there is no segregation(of any kind) amongst the students in the program. In fact, there is no segregation at all. There's just not equal representation of the makey-uppy USA racial classifications.…
The context for the use of "racially segregated" is probably within the current anti-racist movement (see, for example, Kendi's work). This movement has moved away from labeling racist a policy that was implemented with racist intent (like segregated schools during Jim Crow) towards labeling racist a policy that has unequal outcomes based on race, regardless of policymakers' intent. If you start from that perspective…
Let's presume that intelligence is heritable. Given the difference between humans and other species I do not see how this can be argued.
Let's also presume that intelligence varies between humans. If there is no variation across a population, then it cannot be selected for, unless you argue a stepwise change that's completely uniform, for which I don't see any other evolutionary proxy.
Let's NOT presume that intelligence varies between races.
My question to you is this:
Can the children of a group of humans selected for intelligence (e.g. completed enough education despite a cultural revolution, had enough finances, etc. -- Asians; escaped systematic genocide, etc. -- Jews) be, on average and not uniformly and with lots of overlap, smarter than the children of a group of humans not selected for intelligence (e.g. sold by other Africans into slavery, so presumably disadvantaged in the original African society, lower-educational-barrier illegal immigration as with many Central and South Americans)?
Note for the purposes of this question that reproduction within each group (Asian immigrants : Asian immigrants; Jews : Jews; African-Americans : African-Americans; Hispanics : Hispanics) is much larger than reproduction between groups, preventing admixing over time.